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Complete diagnostics of pyroactive structures for smart systems of optoelectronics

机译:完整诊断用于光电子智能系统的热活性结构

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Abstract: The results of study of pyroelectric phenomena in ferroelectric materials for evidence of the possibility to embody the functions promising for creation of smart systems for optoelectronic applications are presented. Designing such systems requires the development of methods for non- destructive complete diagnostics preferably by developing the self-diagnostic ability inherent in materials with the features of smart/intelligent ones. The complex method of complete non-destructive qualification of pyroactive materials based on the method of dynamic photopyroelectric effect allows the determination of pyroelectric, piezoelectric, ferroelectric, dielectric and thermophysical characteristics. The measuring system which allows the study of these characteristics and also memory effects, switching effects, fatigue and degradation process, self-repair process and others is presented. Sample pyroactive system with increased intelligence, such as systems with built-in adaptive controllable domain structure promising for functional optics are developed and peculiarities of their characterization are discussed.!29
机译:摘要:提出了铁电材料中热电现象的研究结果,以证明有可能体现出有望创建用于光电子应用智能系统的功能。设计这种系统需要开发用于非破坏性完整诊断的方法,最好通过开发具有智能/智能特征的材料固有的自诊断能力。基于动态光热电效应方法的热活性材料的完全无损鉴定的复杂方法可以确定热电,压电,铁电,介电和热物理特性。提出了一种可以研究这些特性以及记忆效应,开关效应,疲劳和退化过程,自我修复过程等的测量系统。研制了具有更高智能性的样品热活性系统,例如具有功能性光学前景的内置自适应可控域结构的系统,并讨论了其表征的特点。29

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